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41篇 您的检索式:作者名="Gongming wang"
    题名 作者 年代 出处 被引量
1Microbial Reduction of Graphene Oxide by Shewanella显示文摘Graphene 氧化物(去) 能在由 Shewanella 房间的微生物引起的呼吸调停了的周围的条件下面在正常氧气的安装被归结为 graphene。减少 microbially 的 graphene (MRG ) 展出了优秀电气化学的性质。在 cell/GO 接口的细胞外的电子转移小径系统地被调查,建议两个直接电子转移和电子调停人涉及 GO 减小。Gongming Wang Fang Qian Chad W. Saltikov Yongqin Jiao Yat Li 2011Nano Research2011,4,6:18
2Influence of flue gas cleaning system on characteristics of PM_(2.5)emission from coal-fired power plants显示文摘This study investigated the influence of precipitators and wet flue gas desulfurization equipment on characteristics of PM_(2.5)emission from coal-fired power stations.We measured size distribution and removal efficiencies,including hybrid electrostatic precipitator/bag filters(ESP/BAGs)which have rarely been studied.A bimodal distribution of particle concentrations was observed at the inlet of each precipitator.After the precipitators,particle concentrations were significantly reduced.Although a bimodal distribution was still observed,all peak positions shifted to the smaller end.The removal efficiencies of hybrid ESP/BAGs reached 99%for PM_(2.5),which is considerably higher than those for other types of precipitators.In particular,the influence of hybrid ESP/BAG operating conditions on the performance of dust removal was explored.The efficiency of hybrid ESP/BAGs decreased by 1.9%when the first electrostatic field was shut down.The concentrations and distributions of particulate matter were also measured in three coal-fired power plants before and after desulfurization devices.The results showed diverse removal efficiencies for different desulfurization towers.The reason for the difference requires further research.We estimated the influence of removal technology for particulate matter on total emissions in China.Substituting ESPs with hybrid ESP/BAGs could reduce the total emissions to 104.3 thousand tons,with 47.48 thousand tons of PM_(2.5).Ao Wang Qiang Song Gongming Tu Hui Wang Yong Yue Qiang Yao 2014International Journal of Coal Science & Technology2014,1,1:16
3Three-dimensional graphene framework with ultra-high sulfur content for a robust lithium-sulfur battery显示文摘Benjamin Papandrea Xu Xu Yuxi Xu Chih-Yen Chen Zhaoyang Lin Gongming Wang Yanzhu Luo Matthew Liu yu Huang Liqiang Mai Xiangfeng Duan 2016Nano Research2016,9,1:13
4CdSe Quantum Dot-Sensitized Au/TiO2 Hybrid Mesoporous Films and Their Enhanced Photoelectrochemical Performance显示文摘敏化的 Au/TiO2 混合 mesoporous 拍摄的新奇 CdSe 量点(QD ) 为 photoelectrochemical (PEC ) 被设计了,制作,并且评估应用。Au/TiO2 混合结构被 Au 和 TiO2 nanoparticles (NP ) 的汇编做。一个化学洗澡免职方法被使用有或没有嵌入的 Au NP 在 TiO2 NP 电影上扔 CdSe QD。我们与 Au NP 为这部电影在光电流观察了重要改进,在全部光谱我们学习了的区域(350600 nm ) 。Incident-photon-to-current 效率(IPCE ) 数据揭示了 50% 的平均改进,并且改进在短波长是更重要的。这实质地改进的 PEC 表演尝试性地由于由 Au NP 散布的光被归因于 CdSe QD 的增加的轻吸收。没有 QD 促进感受性,有趣地, Au NP 熄灭了 TiO2 电影的光电流,由于电子在由 Au NP 散布的光上套住的优势。结果建议金属 NP 为在 PEC 房间改进 photoresponse 是潜在地有用的,可能,在象太阳能电池那样的另外的设备,基于敏化 QD 的金属氧化物, nanostructured 拍摄。这个工作表明 NP 能作为散布中心的光服务的那金属,除作为 photo-sensitizers 和电子陷井工作以外。在一部特别 nanocomposite 电影的金属 NP 的功能强烈依赖于他们的结构和形态学。Liping Liu Gongming Wang Yat Li Yadong Li Jin Z. Zhang 2011Nano Research2011,4,3:8
5Two-dimensional MOS2 for hydrogen evolution reaction catalysis: The electronic structure regulation显示文摘Molybdenum disulfide (MoS2) has been recognized as one of the most promising candidates to replace precious Pt for hydrogen evolution reaction (HER) catalysis, due to the natural abundance, low cost, tunable electronic properties, and excellent chemical stability. Although notable processes have been achieved in the past decades, their performance is still far less than that of Pt. Searching effective strategies to boosting their HER performance is still the primary goal. In this review, the recent process of the electronic regulation of MoS2 for HER is summarized, including band structure engineering, electronic state modulation, orbital orientation regulation, interface engineering. Last, the key challenges and opportunities in the development of MoS2-based materials for electrochemical HER are also discussed.Shuwen Niu Jinyan Cai Gongming Wang 2021Nano Research2021,14,6:6
6Similarity measurement method of high-dimensional data based on normalized net lattice subspace显示文摘The performance of conventional similarity measurement methods is affected seriously by the curse of dimensionality of high-dimensional data.The reason is that data difference between sparse and noisy dimensionalities occupies a large proportion of the similarity,leading to the dissimilarities between any results.A similarity measurement method of high-dimensional data based on normalized net lattice subspace is proposed.The data range of each dimension is divided into several intervals,and the components in different dimensions are mapped onto the corresponding interval.Only the component in the same or adjacent interval is used to calculate the similarity.To validate this method,three data types are used,and seven common similarity measurement methods are compared.The experimental result indicates that the relative difference of the method is increasing with the dimensionality and is approximately two or three orders of magnitude higher than the conventional method.In addition,the similarity range of this method in different dimensions is [0,1],which is fit for similarity analysis after dimensionality reduction.李文法 Wang Gongming Li Ke Huang Su 2017High Technology Letters2017,23,2:4
7Reduced graphene oxide/silicon nanowire hetero- structures with enhanced photoactivity and superior photoelectrochemical stability显示文摘Silicon nanowires (SiNWs) have been widely studied as light harvesting antennas in photocatalysts due to their ability to absorb broad-spectrum solar radiation, but they are typically limited by poor photoelectrochemical stability. Here, we report the synthesis of reduced graphene oxide-SiNW (rGO-SiNW) heterostructures to achieve greatly improved photocatalytic activity and stability. The SiNWs were synthesized through a metal-assisted electroless etching process and functionalized with reduced graphene oxide (rGO) flakes through a chemical absorption process. Here, the rGO not only functions as a physical protection layer to isolate the SiNWs from the harsh electrochemical environment but also serves as a charge mediator to facilitate the charge separation and transport processes. Furthermore, the rGO may also function as a redox catalyst to ensure efficient utilization of photo-carriers for the desired chemical reactions. Photocatalytic dye degradation studies show that the photoactivity of the heterostructures can be significantly enhanced with an initial activation process and maintained without apparent decay over repeated reaction cycles. Electrochemical and photo- electrochemical studies indicate that the enhanced photoactivity and photostability can be attributed to the more efficient separation of photoexcited charge carriers in SiNWs and the reduced self-oxidation of the surface of the SiNWs during the photocatalytic dye degradation process. The ability to significantly improve the photocatalytic activity and stability in rGO-SiNW heterostructures can not only lead to more opportunities for the application of silicon-based photocatalysts/ photoelectrodes for solar energy harvesting but also provide new insights into the stabilization of other unstable photocatalyticXing Zhong Gongming wang Benjamin Papandrea Mufan Li Yuxi Xu Yu Chen Chih-Yen Chen Hailong Zhou Teng Xue Yongjia Li Dehui Li Yu Huang Xiangfeng Duan 2015Nano Research2015,8,9:4
8Oxygen vacancies enable the visible light photoactivity of chromium-implanted TiO2 nanowires显示文摘Although computational studies have demonstrated that metal ion doping can effectively narrow the bandgap of TiO_(2),the visible-light photoactivity of metal-doped TiO_(2) photoanodes is still far from satisfactory.Herein,we report an effective strategy to activate the visible-light photoactivity of chromiumimplanted TiO_(2) via the incorporation of oxygen vacancies.The chromium-doped TiO_(2) activated by oxygen vacancies(Cr-TiO_(2)-vac)exhibited an incident photon-to-electron conversion efficiency(IPCE)of~6.8%at450 nm,which is one of the best values reported for metal-doped TiO_(2).Moreover,Cr-TiO_(2)-vac showed no obvious photocurrent decay after 100 h under visible-light illumination.Xianyin Song Wenqing Li Xiaojing Liu Yishang Wu Dong He Zunjian Ke Li Cheng Changzhong Jiang Gongming Wang Xiangheng Xiao Yat Li 2021Journal of Energy Chemistry2021,30,4:2
9Nitrogen doped FeS_(2) nanoparticles for efficient and stable hydrogen evolution reaction显示文摘Performance breakthrough of electrocatalysts highly relies on the regulation of internal structures and electronic states.In present work,for the first time,we successfully synthesized nitrogen doped FeS_(2) nanoparticles(N-FeS_(2))as the electrocatalysts for hydrogen evolution reaction(HER).The band structure and electronic state of FeS_(2) are modulated by a nitrogen doping strategy,as confirmed by X-ray photoelectron spectroscopy(XPS),X-ray absorption spectroscopy(XAS)and density functional theory(DFT)calculations.Owing to the band structure and electronic state regulation as well as the weakening of H-S interaction,the designed N-FeS_(2) electrocatalyst exhibits superior catalytic performance with a low overpotential(~126 mV at 10 mA cm^(-2))and excellent activity stability under alkaline conditions,which is substantially improved as compared with that of the pure FeS_(2) counterpart.Our work demonstrates that the modulation of electron state and band structure of an electrocatalyst,which can provide a valuable guidance for designing excellent catalysts for hydrogen evolution reaction and beyond.Jian Ye Yipeng Zang Qingyu Wang Yida Zhang Da Sun Leijie Zhang Gongming Wang Xusheng Zheng Junfa Zhu 2021Journal of Energy Chemistry2021,30,5:2
10Effect of olfactory ensheathing cell transplantation on myelin repair and motor function in a rat model of experimental allergic encephalomyelitis显示文摘BACKGROUND:Olfactory ensheathing cell transplantation can activate axonal regeneration and enhance myelin repair,which are beneficial for treating demyelinating diseases. OBJECTIVE:To explore the effects of olfactory ensheathing cell transplantation on myelin repair, synaptophysin expression,and motor function in a rat model of experimental allergic encephalomyelitis. DESIGN,TIME AND SETTING:A randomized,controlled experiment was performed at the Laboratory of Provincial Hospital affiliated to Shandong University between August 2006 and September 2007. MATERIALS:Dibenzylamine(Hoechst 33342),luxol fast blue,and rabbit anti-rat synaptophysin antibody were provided by Sigma,USA. METHODS:Olfactory ensheathing cells extracted from neonatal Wistar rats were cultured for 10-14 days and labeled with dibenzylamine.Spinal cord extracted from a healthy guinea pig was homogenized and equally mixed with complete Freund's adjuvant;thereafter,the mixture was intracutaneously injected into two posterior voix pedis of healthy male Wistar rats to establish models of experimental allergic encephalomyelitis.Rats were randomly divided into a control encephalomyelitis group and an olfactory ensheathing cell transplantation group,36 rats in each group.Physiological saline(2μL) or an olfactory ensheathing cell suspension(2μL) was separately injected along lateral cerebral ventricle at day 7 post-model induction. MAIN OUTCOME MEASURES:The migration and distribution of olfactory ensheathing cells were observed under fluorescence microscopy;myelin repair was detected using hematoxylin-eosin staining and luxol fast blue staining;synaptophysin expression was measured using immunohistochemical staining;motor function was evaluated using a motor function scale. RESULTS:Olfactory ensheathing cells could survive in vivo and migrate to the distal end of the transplant focus and spinal cord,and survived 21 days.Hematoxylin-eosin staining and luxol fast blue staining indicated that myelin in the transplantation group was intact,and the inflammatory focus gradually disappeared.Transplantation increased synaptophysin expression(P<0.05 versus control) and motor function(P<0.05). CONCLUSION:Olfactory ensheathing cell transplantation can promote myelin repair,increase synaptophysin protein expression,and ameliorate motor function in a rat model of experimental allergic encephalomyelitis.Yifeng Du Shougang Guo Feng Jin Minzhong Wang Gongming Wang 2009Neural Regeneration Research2009,4,4:1
11Tailoring the adsorption behavior of superoxide intermediates on nickel carbide enables high-rate Li-O_(2) batteries显示文摘Probing the relationship between the adsorption of superoxide species and the kinetics of Li-O_(2) chemistry is critical for designing superior oxygen electrodes for the Li-O_(2) battery,yet the modulation essence,especially at the atomic level,remains little understood.Herein,we reveal that the adsorption behaviors of superoxide species can be effectively regulated via a core-induced interfacial charge interaction,and we find that moderate adsorption strength can enable superior rate capability in a Li-O_(2) battery.More importantly,operando X-ray absorption near-edge structure and surface-enhanced Raman spectroscopy provide tools to monitor in situ the evolution of the superoxide intermediates and the electronic states of the catalyst's metal sites during the discharge and charge processes,and correlate these with the surface adsorption states.The concept of tuning adsorption behavior through interfacial charge engineering could open up new opportunities to further advance the development of the Li-O_(2) battery and beyond.Yun Liu Jinyan Cai Jianbin Zhou Yipeng Zang Xusheng Zheng Zixuan Zhu Bo Liu Gongming Wang Yitai Qian 2022eScience2022,2,4:1
12Orbital-regulated interfacial electronic coupling endows Ni3N with superior catalytic surface for hydrogen evolution reaction显示文摘The interstitial structure and weak Ni-N interaction of Ni3N lead to high unoccupied d orbital energy and unsuitable orbital orientation,which consequently results in weak orbital coupling with H2O and slow water dissociation kinetics for alkaline hydrogen evolution catalysis.Herein,we successfully lower the unoccupied d orbital energy of Ni3N to strengthen the interfacial electronic coupling by employing the strong electron pulling capability of oxygen dopants.The prepared O-Ni3N catalyst delivers an overpotential of 55 mV at 10 mA cm−2,very close to the commercial Pt/C.Refined structural characterization indicates the oxygen incorporation can decrease the electron densities around the Ni sites.Moreover,density functional theory calculation further proves the oxygen incorporation can create more unoccupied orbitals with lower energy and superior orientation for water adsorption and dissociation.The concept of orbital-regulated interfacial electronic coupling could offer a unique approach for the rational design of hydrogen evolution catalysts and beyond.Yanyan Fang Da Sun Shuwen Niu Jinyan Cai Yipeng Zang Yishang Wu Linqin Zhu Yufang Xie Yun Liu Zixuan Zhu Amirabbas Mosallanezhad Di Niu Zheng Lu Junjie Shi Xiaojing Liu Dewei Rao Gongming Wang Yitai Qian 2020Science China Chemistry2020,63,11:1
13Pyrrole derivatives as interlayer modifier of Li-S batteries:Modulation of electrochemical performance by molecular perturbation显示文摘The electrochemical performance of lithium-sulfur(Li-S)batteries is strongly hampered by the shuttle effect and slow redox kinetics of lithium polysulfides(Li PSs).Surface modified interlayer of a separator of Li-S batteries is demonstrated to be an effective strategy to overcome this problem.Herein,cobalt nanoparticles confined in nitrogen co-doped porous carbon framework(Co-CN)were developed from pyrolysis of ZIF-67 and used as interlayer of PP separator for Li-S batteries,and were functionalized by four pyrrole derivatives,1-phenylpyrrole,1-methyl pyrrole,1-(p-toluenesulfonyl)pyrrole,and 1-pyrrole,respectively,which were screened in terms of the electron-withdrawing/donating ability of the substituent groups on the pyrrolic nitrogen.The impact of the molecular structure of pyrrole derivatives on the interaction with Li PSs and the electrochemical performance of Li-S batteries were explored by nuclear magnetic resonance and theoretical calculation.It is uncovered that 1-phenylpyrrole shows the highest enhancement of redox kinetics of Li PSs,attributing to the optimal interaction with Co nanoparticles and Li PSs.Therefore,1-phenylpyrrole modified Co-CN interlayer enables the best electrochemical performance for the Li-S batteries,delivering a specific capacity of 562 m Ah g^(-1)at 5 C and a capacity of 538,526,and 449 m Ah g^(-1)after 500 cycles at 1,2,and 3 C,respectively.At a high sulfur loading of 5.5 mg cm^(-2),it achieves a capacity of 440 m Ah g^(-1)after 500 cycles at 1 C.This work reveals the interaction mechanism among Li PSs,Co nanoparticles and the molecular modifiers in improving the electrochemical performance of Li-S batteries.Jiajv Lin Yuan Zhou Jingbo Wen Weijie Si Hongcheng Gao Gongming Wang Xiongwu Kang 2022Journal of Energy Chemistry2022,,12:1
14Overview of 3D Human Pose Estimation显示文摘3D human pose estimation is a major focus area in the field of computer vision,which plays an important role in practical applications.This article summarizes the framework and research progress related to the estimation of monocular RGB images and videos.An overall perspective ofmethods integrated with deep learning is introduced.Novel image-based and video-based inputs are proposed as the analysis framework.From this viewpoint,common problems are discussed.The diversity of human postures usually leads to problems such as occlusion and ambiguity,and the lack of training datasets often results in poor generalization ability of the model.Regression methods are crucial for solving such problems.Considering image-based input,the multi-view method is commonly used to solve occlusion problems.Here,the multi-view method is analyzed comprehensively.By referring to video-based input,the human prior knowledge of restricted motion is used to predict human postures.In addition,structural constraints are widely used as prior knowledge.Furthermore,weakly supervised learningmethods are studied and discussed for these two types of inputs to improve the model generalization ability.The problem of insufficient training datasets must also be considered,especially because 3D datasets are usually biased and limited.Finally,emerging and popular datasets and evaluation indicators are discussed.The characteristics of the datasets and the relationships of the indicators are explained and highlighted.Thus,this article can be useful and instructive for researchers who are lacking in experience and find this field confusing.In addition,by providing an overview of 3D human pose estimation,this article sorts and refines recent studies on 3D human pose estimation.It describes kernel problems and common useful methods,and discusses the scope for further research.Jianchu Lin Shuang Li Hong Qin Hongchang Wang Ning Cui Qian Jiang Haifang Jian Gongming Wang 2023Computer Modeling in Engineering & Sciences2023,,3:1
15Ef-fect of Internal Helical Microfin on Condensation Perfor-mance of Two-Phase Closed Thermosyphon显示文摘WANG Xinyu XIN Gongming TIAN Fuzhong 2012AdvancedMaterials Research2012,,:1
16Nitrogen-Doped ZnO Nanowire Arrays for Photoelectrochemical Water Splitting显示文摘Yang Xunyu Wolcott Abraham Wang Gongming 2009Nano Letters2009,,9:1
17Phosphorus incorporation activates the basal plane of tungsten disulfide for efficient hydrogen evolution catalysis显示文摘The basal planes of transition metal dichalcogenides are basically inert for catalysis due to the absence of adsorption and activation sites,which substantially limit their catalytic application.Herein,a facile strategy to activate the basal plane of WS_(2) for hydrogen evolution reaction(HER)catalysis by phosphorous-induced electron density modulation is demonstrated.The optimized P doped WS_(2)(P-WS_(2))nanowires arrays deliver a low overpotential of 88 mV at 10 mA·cm^(-2)with a Tafel slope of 62 mV·dec^(-1)for HER,which is substantially better than the pristine counterpart.X-ray photoelectron spectroscopy confirms the surface electron densities of WS_(2) have been availably manipulated by P doping.Moreover,density functional theory(DFT)studies further prove P doping can redistribute the density of states(DOS)around EF,which endow the inert basal plane of PWS_(2) with edge-like catalytic activity toward hydrogen evolution catalysis.Our work offers a facile and effective approach to modulate the catalytic surface of WS_(2) toward highly efficient HER catalysis.Fan Wang Shuwen Niu Xinqi Liang Gongming Wang Minghua Chen 2022Nano Research2022,15,4:1
18Properties at elevated temperature and recrystallization of molybdenum doped with potassium,silicon and aluminum 显示文摘Wang Yong Gao Jiacheng Chen Gongming 2008Intemational Journal of Refractory Metals & Hard Materials2008,26,:1
19A multi-target stance detection based on Bi-LSTM network with position-weight显示文摘In the task of multi-target stance detection,there are problems the mutual influence of content describing different targets,resulting in reduction in accuracy.To solve this problem,a multi-target stance detection algorithm based on a bidirectional long short-term memory(Bi-LSTM)network with position-weight is proposed.First,the corresponding position of the target in the input text is calculated with the ultimate position-weight vector.Next,the position information and output from the Bi-LSTM layer are fused by the position-weight fusion layer.Finally,the stances of different targets are predicted using the LSTM network and softmax classification.The multi-target stance detection corpus of the American election in 2016 is used to validate the proposed method.The results demonstrate that the Bi-LSTM network with position-weight achieves an advantage of 1.4%in macro average F1 value in the comparison of recent algorithms.徐翼龙 Li Wenfa Wang Gongming Huang Lingyun 2020High Technology Letters2020,26,4:1
20Accelerating water dissociation kinetics of Ni3N by tuning interfacial orbital coupling显示文摘The high unoccupied d band energy of Ni_(3)N basically results in weak orbital coupling with water molecule,consequently leading to slow water dissociation kinetics.Herein,we demonstrate Cr doping can downshift the unoccupied d orbitals and strengthen the interfacial orbital coupling to boost the water dissociation kinetics.The prepared Cr-Ni_(3)N/Ni displays an impressive overpotential of 37 mV at 10 mA·cmgeo-2,close to the benchmark Pt/C in 1.0 M KOH solution.Refined structural analysis reveals the Cr dopant exists as the Cr-N_(6)states and the average d band energy of Ni_(3)N is also lowered.Density functional theory calculation further confirms the downshifted d band energy can strengthen the orbital coupling between the unpaired electrons in O 2p and the unoccupied state of Ni 3d,which thus facilitates the water adsorption and dissociation.The work provides a new concept to achieve on-demand functions for hydrogen evolution catalysis and beyond,by regulating the interfacial orbital coupling.Yishang Wu Yufang Xie Shuwen Niu Yipeng Zang Jinyan Cai Zenan Bian Xuanwei Yin Yanyan Fang Da Sun Di Niu Zheng Lu Amirabbas Mosallanezhad Huijuan Wang Dewei Rao Hongge Pan Gongming Wang 2021Nano Research2021,14,10:1
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